Selective detection of amyloid fibrils by a dipole moment mechanism on dielectrode-Structural insights by in silico analysis

Amyloid fibrils are associated with different neurodegenerative diseases, a final product of several protein aggregation pathways. Parkinson's disease is a type of amyloidosis, characterized by the accumulation and propagation of amyloid fibrils of alpha-synuclein. The detection of fibrils at l...

Full description

Saved in:
Bibliographic Details
Main Authors: Adam, Hussaini, Gopinath, Subash C. B., Kumarevel, Thirumananseri, Arshad, M. K. Md, Adam, Tijjani, Sauli, Zaliman, Subramaniam, Sreeramanan, Hashim, Uda, Chen, Yeng
Format: Article
Published: 2023
Subjects:
Online Access:http://eprints.um.edu.my/38898/
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Universiti Malaya
id my.um.eprints.38898
record_format eprints
spelling my.um.eprints.388982024-11-01T08:01:08Z http://eprints.um.edu.my/38898/ Selective detection of amyloid fibrils by a dipole moment mechanism on dielectrode-Structural insights by in silico analysis Adam, Hussaini Gopinath, Subash C. B. Kumarevel, Thirumananseri Arshad, M. K. Md Adam, Tijjani Sauli, Zaliman Subramaniam, Sreeramanan Hashim, Uda Chen, Yeng R Medicine RK Dentistry Oral surgery Amyloid fibrils are associated with different neurodegenerative diseases, a final product of several protein aggregation pathways. Parkinson's disease is a type of amyloidosis, characterized by the accumulation and propagation of amyloid fibrils of alpha-synuclein. The detection of fibrils at low concentrations is critical for the diagnosis of Parkinson's disease. We report a novel technique for the selective detection of amyloid fibrils through a dipole moment on a dielectrode surface. A sensitive dielectrode sensor for detecting aggregation of alpha synuclein and works by interacting an antibody on two-electrode surface functionalized gold interdigitated electrode. For the physical characterization of the sensing surface and finger electrodes, high-power microscope, scanning electron microscope, and 3D-profilormeter were used. Electrical characterization was performed on the sensing surface by using Keithley 6487 picoammeter. Based on the stability analysis with various electrolytes solutions, the sensor was found to be stable from pH 3. Further, under optimal circumstances, a linear range of alpha synuclein fibril detection was from 100 aM to 100 pM y = 5E-06x + 5E-06; R2 = 0.9724], and the limit of detection was estimated to be 100 aM based on S/N = 3. This study was further anchored by molecular docking analysis with synuclein peptide (47-56). We predict that advancements in this direction will assist in clarifying the complex process posed by Parkinson's disease. 2023-03 Article PeerReviewed Adam, Hussaini and Gopinath, Subash C. B. and Kumarevel, Thirumananseri and Arshad, M. K. Md and Adam, Tijjani and Sauli, Zaliman and Subramaniam, Sreeramanan and Hashim, Uda and Chen, Yeng (2023) Selective detection of amyloid fibrils by a dipole moment mechanism on dielectrode-Structural insights by in silico analysis. Process Biochemistry, 126. pp. 23-32. ISSN 1359-5113, DOI https://doi.org/10.1016/j.procbio.2022.12.030 <https://doi.org/10.1016/j.procbio.2022.12.030>. 10.1016/j.procbio.2022.12.030
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic R Medicine
RK Dentistry
Oral surgery
spellingShingle R Medicine
RK Dentistry
Oral surgery
Adam, Hussaini
Gopinath, Subash C. B.
Kumarevel, Thirumananseri
Arshad, M. K. Md
Adam, Tijjani
Sauli, Zaliman
Subramaniam, Sreeramanan
Hashim, Uda
Chen, Yeng
Selective detection of amyloid fibrils by a dipole moment mechanism on dielectrode-Structural insights by in silico analysis
description Amyloid fibrils are associated with different neurodegenerative diseases, a final product of several protein aggregation pathways. Parkinson's disease is a type of amyloidosis, characterized by the accumulation and propagation of amyloid fibrils of alpha-synuclein. The detection of fibrils at low concentrations is critical for the diagnosis of Parkinson's disease. We report a novel technique for the selective detection of amyloid fibrils through a dipole moment on a dielectrode surface. A sensitive dielectrode sensor for detecting aggregation of alpha synuclein and works by interacting an antibody on two-electrode surface functionalized gold interdigitated electrode. For the physical characterization of the sensing surface and finger electrodes, high-power microscope, scanning electron microscope, and 3D-profilormeter were used. Electrical characterization was performed on the sensing surface by using Keithley 6487 picoammeter. Based on the stability analysis with various electrolytes solutions, the sensor was found to be stable from pH 3. Further, under optimal circumstances, a linear range of alpha synuclein fibril detection was from 100 aM to 100 pM y = 5E-06x + 5E-06; R2 = 0.9724], and the limit of detection was estimated to be 100 aM based on S/N = 3. This study was further anchored by molecular docking analysis with synuclein peptide (47-56). We predict that advancements in this direction will assist in clarifying the complex process posed by Parkinson's disease.
format Article
author Adam, Hussaini
Gopinath, Subash C. B.
Kumarevel, Thirumananseri
Arshad, M. K. Md
Adam, Tijjani
Sauli, Zaliman
Subramaniam, Sreeramanan
Hashim, Uda
Chen, Yeng
author_facet Adam, Hussaini
Gopinath, Subash C. B.
Kumarevel, Thirumananseri
Arshad, M. K. Md
Adam, Tijjani
Sauli, Zaliman
Subramaniam, Sreeramanan
Hashim, Uda
Chen, Yeng
author_sort Adam, Hussaini
title Selective detection of amyloid fibrils by a dipole moment mechanism on dielectrode-Structural insights by in silico analysis
title_short Selective detection of amyloid fibrils by a dipole moment mechanism on dielectrode-Structural insights by in silico analysis
title_full Selective detection of amyloid fibrils by a dipole moment mechanism on dielectrode-Structural insights by in silico analysis
title_fullStr Selective detection of amyloid fibrils by a dipole moment mechanism on dielectrode-Structural insights by in silico analysis
title_full_unstemmed Selective detection of amyloid fibrils by a dipole moment mechanism on dielectrode-Structural insights by in silico analysis
title_sort selective detection of amyloid fibrils by a dipole moment mechanism on dielectrode-structural insights by in silico analysis
publishDate 2023
url http://eprints.um.edu.my/38898/
_version_ 1814933223642234880